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细菌病原体的丝状形态:调控因子和控制策略。

Filamentous morphology of bacterial pathogens: regulatory factors and control strategies.

机构信息

Marine Integrated Biomedical Technology Center, The National Key Research Institutes in Universities, Pukyong National University, Busan, 48513, Republic of Korea.

Research Center for Marine Integrated Bionics Technology, Pukyong National University, Busan, 48513, Republic of Korea.

出版信息

Appl Microbiol Biotechnol. 2022 Sep;106(18):5835-5862. doi: 10.1007/s00253-022-12128-1. Epub 2022 Aug 22.

Abstract

Several studies have demonstrated that when exposed to physical, chemical, and biological stresses in the environment, many bacteria (Gram-positive and Gram-negative) change their morphology from a normal cell to a filamentous shape. The formation of filamentous morphology is one of the survival strategies against environmental stress and protection against phagocytosis or protist predators. Numerous pathogenic bacteria have shown filamentous morphologies when examined in vivo or in vitro. During infection, certain pathogenic bacteria adopt a filamentous shape inside the cell to avoid phagocytosis by immune cells. Filamentous morphology has also been seen in biofilms formed on biotic or abiotic surfaces by certain bacteria. As a result, in addition to protecting against phagocytosis by immune cells or predators, the filamentous shape aids in biofilm adhesion or colonization to biotic or abiotic surfaces. Furthermore, these filamentous morphologies of bacterial pathogens lead to antimicrobial drug resistance. Clinically, filamentous morphology has become one of the most serious challenges in treating bacterial infection. The current review went into great detail about the various factors involved in the change of filamentous morphology and the underlying mechanisms. In addition, the review discussed a control strategy for suppressing filamentous morphology in order to combat bacterial infections. Understanding the mechanism underlying the filamentous morphology induced by various environmental conditions will aid in drug development and lessen the virulence of bacterial pathogens. KEY POINTS: • The bacterial filamentation morphology is one of the survival mechanisms against several environmental stress conditions and protection from phagocytosis by host cells and protist predators. • The filamentous morphologies in bacterial pathogens contribute to enhanced biofilm formation, which develops resistance properties against antimicrobial drugs. • Filamentous morphology has become one of the major hurdles in treating bacterial infection, hence controlling strategies employed for inhibiting the filamentation morphology from combating bacterial infections.

摘要

已有多项研究表明,当许多细菌(革兰氏阳性菌和革兰氏阴性菌)暴露于环境中的物理、化学和生物压力时,其形态会从正常细胞转变为丝状。丝状形态的形成是应对环境压力和防止吞噬或原生动物捕食的一种生存策略。许多致病性细菌在体内或体外检查时都表现出丝状形态。在感染过程中,某些致病性细菌在细胞内采用丝状形态以避免被免疫细胞吞噬。某些细菌在生物或非生物表面形成的生物膜中也观察到丝状形态。因此,除了防止被免疫细胞或捕食者吞噬外,丝状形态还有助于生物膜在生物或非生物表面的黏附和定植。此外,这些细菌病原体的丝状形态导致了抗菌药物耐药性。临床上,丝状形态已成为治疗细菌感染的最严峻挑战之一。本综述详细探讨了丝状形态变化的各种因素和潜在机制。此外,还讨论了抑制丝状形态的控制策略,以对抗细菌感染。了解各种环境条件下诱导丝状形态的机制有助于药物开发和减轻细菌病原体的毒力。

关键点

  • 细菌丝状形态是应对多种环境压力条件和防止被宿主细胞和原生动物捕食的一种生存机制。

  • 细菌病原体中的丝状形态有助于增强生物膜的形成,从而产生对抗抗菌药物的耐药性。

  • 丝状形态已成为治疗细菌感染的主要障碍之一,因此需要采用控制策略来抑制丝状形态以对抗细菌感染。

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